论文标题
非线性干涉测量法与红外跨面
Nonlinear interferometry with infrared metasurfaces
论文作者
论文摘要
由亚裂开的光散射器或元面积组成的光学元素具有减少占地面积和展开光学设备的新功能的承诺。特别的兴趣集中在操纵光束的相位和振幅上的元时间上。可以使用干涉法进行跨膜的表征,但是,这可能很麻烦,特别是在红外(IR)范围内。在这里,我们实现了一种基于非线性干扰的IR元张力表征的新方法,该方法使用可访问的组件进行可见光。相关的IR和可见光子被启动到非线性干涉仪中,以使元表面对IR光子施加的相位曲线可修饰可见光光子波长处的干扰。此外,我们表明该概念可用于使用单个IR元表面对可见光光束的强度曲线进行宽带操纵。我们的方法展开了量子干涉仪的潜力,以表征晚期光学元件的表征。
The optical elements comprised of sub-diffractive light scatterers, or metasurfaces, hold a promise to reduce the footprint and unfold new functionalities of optical devices. A particular interest is focused on metasurfaces for manipulation of phase and amplitude of light beams. Characterisation of metasurfaces can be performed using interferometry, which, however, may be cumbersome, specifically in the infrared (IR) range. Here, we realise a new method for characterising IR metasurfaces based on nonlinear interference, which uses accessible components for visible light. Correlated IR and visible photons are launched into a nonlinear interferometer so that the phase profile, imposed by the metasurface on the IR photons, modifies the interference at the visible photon wavelength. Furthermore, we show that this concept can be used for broadband manipulation of the intensity profile of a visible beam using a single IR metasurface. Our method unfolds the potential of quantum interferometry for the characterization of advanced optical elements.